English

Transition from Diffusive to Superdiffusive Transport in Carbon Nanotube Networks via Nematic Order Control

Materials Science 2023-05-15 v2

Abstract

The one-dimensional confinement of quasiparticles in individual carbon nanotubes (CNTs) leads to extremely anisotropic electronic and optical properties. In a macroscopic ensemble of randomly oriented CNTs, this anisotropy disappears together with other properties that make them attractive for certain device applications. The question however remains if not only anisotropy, but other types of behaviours are suppressed by disorder. Here, we compare the dynamics of quasiparticles under strong electric fields in aligned and random CNT networks using a combination of terahertz emission and photocurrent experiments and out-of-equilibrium numerical simulations. We find that the degree of alignment strongly influences the excited quasiparticles' dynamics, rerouting the thermalisation pathways. This is, in particular, evidenced in the high-energy, high-momentum electronic population (probed through the formation of low energy excitons via exciton impact ionization) and the transport regime evolving from diffusive to superdiffusive.

Keywords

Cite

@article{arxiv.2303.01866,
  title  = {Transition from Diffusive to Superdiffusive Transport in Carbon Nanotube Networks via Nematic Order Control},
  author = {Michael Wais and Filchito Renee G. Bagsican and Natsumi Komatsu and Weilu Gao and Kazunori Serita and Hironaru Murakami and Karsten Held and Iwao Kawayama and Junichiro Kono and Marco Battiato and Masayoshi Tonouchi},
  journal= {arXiv preprint arXiv:2303.01866},
  year   = {2023}
}

Comments

17 pages, 5 figures